Nucleolin antagonist triggers autophagic cell death in human glioblastoma primary cells and decreased in vivo tumor growth in orthotopic brain tumor model

被引:43
作者
Benedetti, Elisabetta [1 ]
Antonosante, Andrea [1 ]
d'Angelo, Michele [1 ]
Cristiano, Loredana [1 ]
Galzio, Renato [1 ]
Destouches, Damien [2 ,3 ]
Florio, Tiziana Marilena [1 ]
Dhez, Anne Chloe [1 ]
Astarita, Carlo [6 ,7 ]
Cinque, Benedetta [1 ]
Fidoamore, Alessia [1 ]
Rosati, Floriana [4 ]
Cifone, Maria Grazia [1 ]
Ippoliti, Rodolfo [1 ]
Giordano, Antonio [5 ,6 ,7 ]
Courty, Jose [2 ,3 ]
Cimini, Annamaria [1 ,6 ,7 ,8 ]
机构
[1] Univ Aquila, Dept Life Hlth & Environm Sci, I-67100 Laquila, Italy
[2] Univ Paris Est, UPEC, Dept Cell Biol, Creteil, France
[3] Hop Henri Mondor, CNRS, Lab Rech Croissance Cellulaire Reparat & Regenera, F-94010 Creteil, France
[4] Univ Siena, Dept Life Sci, I-53100 Siena, Italy
[5] Univ Siena, Dept Med Surg & Neurosci, I-53100 Siena, Italy
[6] Temple Univ, Sbarro Inst Canc Res & Mol Med, Philadelphia, PA 19122 USA
[7] Temple Univ, Ctr Biotechnol, Philadelphia, PA 19122 USA
[8] Natl Inst Nucl Phys INFN, Gran Sasso Natl Lab LNGS, Assergi, Italy
关键词
glioblastoma; autophagy; targeted therapy; SURFACE-EXPRESSED NUCLEOLIN; PROTEIN; CANCER; PSEUDOPEPTIDES; TUMORIGENESIS; MIGRATION; BINDING; P62;
D O I
10.18632/oncotarget.5990
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Nucleolin (NCL) is highly expressed in several types of cancer and represents an interesting therapeutic target. It is expressed at the plasma membrane of tumor cells, a property which is being used as a marker for several human cancer including glioblastoma. In this study we investigated targeting NCL as a new therapeutic strategy for the treatment of this pathology. To explore this possibility, we studied the effect of an antagonist of NCL, the multivalent pseudopeptide N6L using primary culture of human glioblastoma cells. In this system, N6L inhibits cell growth with different sensitivity depending to NCL localization. Cell cycle analysis indicated that N6L-induced growth reduction was due to a block of the G1/S transition with down-regulation of the expression of cyclin D1 and B2. By monitoring autophagy markers such as p62 and LC3II, we demonstrate that autophagy is enhanced after N6L treatment. In addition, N6L-treatment of mice bearing tumor decreased in vivo tumor growth in orthotopic brain tumor model and increase mice survival. The results obtained indicated an antiproliferative and pro-autophagic effect of N6L and point towards its possible use as adjuvant agent to the standard therapeutic protocols presently utilized for glioblastoma.
引用
收藏
页码:42091 / 42104
页数:14
相关论文
共 39 条
[1]   HAMLET (human α-lactalbumin made lethal to tumor cells) triggers autophagic tumor cell death [J].
Aits, Sonja ;
Gustafsson, Lotta ;
Hallgren, Oskar ;
Brest, Patrick ;
Gustafsson, Mattias ;
Trulsson, Maria ;
Mossberg, Ann-Kristin ;
Simon, Hans-Uwe ;
Mograbi, Baharia ;
Svanborg, Catharina .
INTERNATIONAL JOURNAL OF CANCER, 2009, 124 (05) :1008-1019
[2]   Human mesenchymal stromal cells inhibit tumor growth in orthotopic glioblastoma xenografts [J].
Pacioni, Simone ;
D'Alessandris, Quintino Giorgio ;
Giannetti, Stefano ;
Morgante, Liliana ;
Cocce, Valentina ;
Bonomi, Arianna ;
Buccarelli, Mariachiara ;
Pascucci, Luisa ;
Alessandri, Giulio ;
Pessina, Augusto ;
Ricci-Vitiani, Lucia ;
Falchetti, Maria Laura ;
Pallini, Roberto .
STEM CELL RESEARCH & THERAPY, 2017, 8
[3]   Human mesenchymal stromal cells inhibit tumor growth in orthotopic glioblastoma xenografts [J].
Simone Pacioni ;
Quintino Giorgio D’Alessandris ;
Stefano Giannetti ;
Liliana Morgante ;
Valentina Coccè ;
Arianna Bonomi ;
Mariachiara Buccarelli ;
Luisa Pascucci ;
Giulio Alessandri ;
Augusto Pessina ;
Lucia Ricci-Vitiani ;
Maria Laura Falchetti ;
Roberto Pallini .
Stem Cell Research & Therapy, 8
[4]   Dihydroartemisinin Exerts Anti-Tumor Activity by Inducing Mitochondrion and Endoplasmic Reticulum Apoptosis and Autophagic Cell Death in Human Glioblastoma Cells [J].
Qu, Chengbin ;
Ma, Jun ;
Liu, Xiaobai ;
Xue, Yixue ;
Zheng, Jian ;
Liu, Libo ;
Liu, Jing ;
Li, Zhen ;
Zhang, Lei ;
Liu, Yunhui .
FRONTIERS IN CELLULAR NEUROSCIENCE, 2017, 11
[5]   A novel BH3 mimetic Bcl-2 inhibitor promotes autophagic cell death and reduces in vivo Glioblastoma tumor growth [J].
Calis, Seyma ;
Dogan, Berna ;
Durdagi, Serdar ;
Celebi, Asuman ;
Yapicier, Ozlem ;
Kilic, Turker ;
Turanli, Eda Tahir ;
Avsar, Timucin .
CELL DEATH DISCOVERY, 2022, 8 (01)
[6]   The in vitro and in vivo anticancer activities of Antrodia salmonea through inhibition of metastasis and induction of ROS-mediated apoptotic and autophagic cell death in human glioblastoma cells [J].
Lin, Yi-Pin ;
Hseu, You-Cheng ;
Thiyagarajan, Varadharajan ;
Vadivalagan, Chithravel ;
Pandey, Sudhir ;
Lin, Kai-Yuan ;
Hsu, Yuan-Tai ;
Liao, Jiunn-Wang ;
Lee, Chuan-Chen ;
Yang, Hsin-Ling .
BIOMEDICINE & PHARMACOTHERAPY, 2023, 158
[7]   Loss of endothelial programmed cell death 10 activates glioblastoma cells and promotes tumor growth [J].
Zhu, Yuan ;
Zhao, Kai ;
Prinz, Anja ;
Keyvani, Kathy ;
Lambertz, Nicole ;
Kreitschmann-Andermahr, Ilonka ;
Lei, Ting ;
Sure, Ulrich .
NEURO-ONCOLOGY, 2016, 18 (04) :538-548
[8]   Protocol using ex vivo mouse brain slice culture mimicking in vivo conditions to study tumor growth and cell motility of glioblastoma cells [J].
Neises, Laura ;
Delbrouck, Catherine ;
Schuster, Anne ;
Rezaipour, Mahsa ;
Eiden, Kim ;
Oudin, Anais ;
Fabian, Carina ;
Niclou, Simone P. ;
Golebiewska, Anna ;
Meiser, Johannes .
STAR PROTOCOLS, 2024, 5 (04)
[9]   Sodium butyrate induces p53 dependent and independent cell death in human brain tumor cells in primary culture in vitro [J].
Mitra, Rohan ;
Vazhayil, Vikas ;
Bhagavatula, Indira Devi ;
Keshava, Rohini ;
Gope, Rajalakshmi .
INDIAN JOURNAL OF EXPERIMENTAL BIOLOGY, 2017, 55 (11) :747-755
[10]   Autophagic cell death of human pancreatic tumor cells mediated by oleandrin, a lipid-soluble cardiac glycoside [J].
Newman, Robert A. ;
Kondo, Yasuko ;
Yokoyama, Tomohisa ;
Dixon, Susan ;
Cartwright, Carrie ;
Chan, Diana ;
Johansen, Mary ;
Yang, Peiying .
INTEGRATIVE CANCER THERAPIES, 2007, 6 (04) :354-364